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JOURNALS // Avtomatika i Telemekhanika // Archive

Avtomat. i Telemekh., 2024 Issue 6, Pages 19–37 (Mi at16376)

This article is cited in 3 papers

Topical issue

Robust controller design for multivariable systems under nonstationary parametric variations and bounded external disturbances

V. N. Chestnov, D. V. Shatov

V. A. Trapeznikov Institute of Control Sciences of Russian Academy of Sciences, Moscow

Abstract: This paper considers linear multivariable systems with physical parameters varying from their known nominal values in an arbitrary and nonstationary manner. The plant is subjected to polyharmonic external disturbances containing an arbitrary number of unknown frequencies with unknown amplitudes having a bounded sum. The problem is to design a controller that robustly stabilizes the closed loop system and ensures desired errors for the controlled variables of the plant with nominal parameters in the steady-state mode. The system equations of the original problem are represented in the $(W, \Lambda, K)$-form; for this form, the standard $H_\infty$ optimization problem is stated and solved. The desired accuracy of the system is achieved by analytically assigning the weight matrix of the controlled variables. The controller design method is illustrated by an example of solving a well-known benchmark problem.

Keywords: linear multivariable systems, robust control, controller design, $H_\infty$ optimization, bounded external disturbances, nonstationary parameters.

Presented by the member of Editorial Board: P. S. Shcherbakov

Received: 25.01.2024
Revised: 12.03.2024
Accepted: 20.03.2024

DOI: 10.31857/S0005231024060029


 English version:
Automation and Remote Control, 2024, 85:6, 489–501


© Steklov Math. Inst. of RAS, 2026